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首页> 外文期刊>Chinese Journal of Systems Engineering and Electronics >Optimal two-iteration sculling compensation mathematical framework for SINS velocity updating
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Optimal two-iteration sculling compensation mathematical framework for SINS velocity updating

机译:捷联惯导速度更新的最优两次迭代双桨补偿数学框架

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摘要

A new two-iteration sculling compensation mathematical framework is provided for modern-day strapdown inertial navigation system (SINS) algorithm design that utilizes a new concept in velocity updating. The principal structure of this framework includes twice sculling compensation procedure using incremental outputs from the inertial system sensors during the velocity updating interval. Then, the moderate algorithm is designed to update the velocity parameter. The analysis is conducted in the condition of sculling motion which indicates that the new mathematical framework error which is smaller than the conventional ones by at least two orders is far superior. Therefore, a summary is given for SINS software which can be designed with the new mathematical framework in velocity updating.
机译:为现代捷联惯性导航系统(SINS)算法设计提供了新的两次迭代双桨补偿数学框架,该算法在速度更新中采用了新概念。该框架的主要结构包括两次惯性补偿程序,在速度更新间隔期间使用惯性系统传感器的增量输出。然后,设计适度算法来更新速度参数。在划桨运动的情况下进行分析,这表明新的数学框架误差比传统的框架误差小至少两个数量级。因此,总结了可以用新的数学框架进行速度更新的SINS软件的设计。

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